Consensus recommendations for trabecular meshwork cell isolation, characterization and culture

Cultured trabecular meshwork (TM) cells are a valuable model system to study the cellular mechanisms involved in the regulation of conventional outflow resistance and thus intraocular pressure; and their dysfunction resulting in ocular hypertension. In this review, we describe the standard procedure...

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Published in:Experimental eye research Vol. 171; pp. 164 - 173
Main Authors: Keller, Kate E., Bhattacharya, Sanjoy K., Borrás, Theresa, Brunner, Thomas M., Chansangpetch, Sunee, Clark, Abbott F., Dismuke, W. Michael, Du, Yiqin, Elliott, Michael H., Ethier, C. Ross, Faralli, Jennifer A., Freddo, Thomas F., Fuchshofer, Rudolf, Giovingo, Michael, Gong, Haiyan, Gonzalez, Pedro, Huang, Alex, Johnstone, Murray A., Kaufman, Paul L., Kelley, Mary J., Knepper, Paul A., Kopczynski, Casey C., Kuchtey, John G., Kuchtey, Rachel W., Kuehn, Markus H., Lieberman, Raquel L., Lin, Shan C., Liton, Paloma, Liu, Yutao, Lütjen-Drecoll, Elke, Mao, Weiming, Masis-Solano, Marisse, McDonnell, Fiona, McDowell, Colleen M., Overby, Darryl R., Pattabiraman, Padmanabhan P., Raghunathan, Vijay K., Rao, P. Vasanth, Rhee, Douglas J., Chowdhury, Uttio Roy, Russell, Paul, Samples, John R., Schwartz, Donald, Stubbs, Evan B., Tamm, Ernst R., Tan, James C., Toris, Carol B., Torrejon, Karen Y., Vranka, Janice A., Wirtz, Mary K., Yorio, Thomas, Zhang, Jie, Zode, Gulab S., Fautsch, Michael P., Peters, Donna M., Acott, Ted S., Stamer, W. Daniel
Format: Journal Article
Language:English
Published: England Elsevier Ltd 01.06.2018
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ISSN:0014-4835, 1096-0007, 1096-0007
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Abstract Cultured trabecular meshwork (TM) cells are a valuable model system to study the cellular mechanisms involved in the regulation of conventional outflow resistance and thus intraocular pressure; and their dysfunction resulting in ocular hypertension. In this review, we describe the standard procedures used for the isolation of TM cells from several animal species including humans, and the methods used to validate their identity. Having a set of standard practices for TM cells will increase the scientific rigor when used as a model, and enable other researchers to replicate and build upon previous findings. •Comprehensive review of techniques to culture TM cells are presented.•Helpful tips for culturing TM cells are described.•First set of consensus standards for TM cell research is defined.
AbstractList Cultured trabecular meshwork (TM) cells are a valuable model system to study the cellular mechanisms involved in the regulation of conventional outflow resistance and thus intraocular pressure; and their dysfunction resulting in ocular hypertension. In this review, we describe the standard procedures used for the isolation of TM cells from several animal species including humans, and the methods used to validate their identity. Having a set of standard practices for TM cells will increase the scientific rigor when used as a model, and enable other researchers to replicate and build upon previous findings.
Cultured trabecular meshwork (TM) cells are a valuable model system to study the cellular mechanisms involved in the regulation of conventional outflow resistance and thus intraocular pressure; and their dysfunction resulting in ocular hypertension. In this review, we describe the standard procedures used for the isolation of TM cells from several animal species including humans, and the methods used to validate their identity. Having a set of standard practices for TM cells will increase the scientific rigor when used as a model, and enable other researchers to replicate and build upon previous findings. •Comprehensive review of techniques to culture TM cells are presented.•Helpful tips for culturing TM cells are described.•First set of consensus standards for TM cell research is defined.
Cultured trabecular meshwork (TM) cells are a valuable model system to study the cellular mechanisms involved in the regulation of conventional outflow resistance and thus intraocular pressure; and their dysfunction resulting in ocular hypertension. In this review, we describe the standard procedures used for the isolation of TM cells from several animal species including humans, and the methods used to validate their identity. Having a set of standard practices for TM cells will increase the scientific rigor when used as a model, and enable other researchers to replicate and build upon previous findings.Cultured trabecular meshwork (TM) cells are a valuable model system to study the cellular mechanisms involved in the regulation of conventional outflow resistance and thus intraocular pressure; and their dysfunction resulting in ocular hypertension. In this review, we describe the standard procedures used for the isolation of TM cells from several animal species including humans, and the methods used to validate their identity. Having a set of standard practices for TM cells will increase the scientific rigor when used as a model, and enable other researchers to replicate and build upon previous findings.
Author Freddo, Thomas F.
Schwartz, Donald
Wirtz, Mary K.
Kuchtey, John G.
Kelley, Mary J.
McDonnell, Fiona
Ethier, C. Ross
Johnstone, Murray A.
Rao, P. Vasanth
Russell, Paul
Elliott, Michael H.
Stamer, W. Daniel
Pattabiraman, Padmanabhan P.
Chowdhury, Uttio Roy
Mao, Weiming
Tamm, Ernst R.
Chansangpetch, Sunee
Giovingo, Michael
Tan, James C.
Bhattacharya, Sanjoy K.
Lin, Shan C.
McDowell, Colleen M.
Lütjen-Drecoll, Elke
Overby, Darryl R.
Rhee, Douglas J.
Gonzalez, Pedro
Kopczynski, Casey C.
Du, Yiqin
Toris, Carol B.
Zhang, Jie
Masis-Solano, Marisse
Knepper, Paul A.
Keller, Kate E.
Dismuke, W. Michael
Fuchshofer, Rudolf
Torrejon, Karen Y.
Yorio, Thomas
Gong, Haiyan
Brunner, Thomas M.
Samples, John R.
Acott, Ted S.
Huang, Alex
Zode, Gulab S.
Faralli, Jennifer A.
Liton, Paloma
Kuehn, Markus H.
Kaufman, Paul L.
Vranka, Janice A.
Clark, Abbott F.
Kuchtey, Rachel W.
Liu, Yutao
Peters, Donna M.
Lieberman, Raquel L.
Raghunathan, Vijay K.
Stubbs, Evan B.
Fautsch, Michael P.
Borrás, Theresa
AuthorAffiliation m University of Regensburg, Germany
t Vanderbilt University, United States
ff University of Southern California, United States
x Imperial College, London, United Kingdom
z University of Houston, United States
kk Department of Ophthalmology, Duke University, DUMC 3802, Durham, NC 27705, United States
ii Department of Pathology & Laboratory Medicine, University of Wisconsin, 1300 University Ave, Madison, WI 53706, United States
i University of Oklahoma, United States
bb University of California, Davis, United States
n John H. Stroger, Jr. Hospital of Cook County, United States
e University of California, San Francisco, United States
p Duke University, United States
gg Glauconix, United States
g Aerie Pharmaceuticals, United States
k University of Wisconsin, United States
y Case Western Reserve University, United States
b University of Miami, United States
w University of Erlangen-Nuremberg, Germany
jj Department of Ophthalmology, Department of Biochemistry & Molecular Biology, Oregon Health and Science Un
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BackLink https://www.ncbi.nlm.nih.gov/pubmed/29526795$$D View this record in MEDLINE/PubMed
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Keywords Glaucoma
Conventional outflow
Fibroblast growth factor
Phosphate-buffered saline
Interleukin
Ocular hypertension
Matrix gla protein
Fetal bovine serum
Dulbecco's modified Eagle's medium
Ethylenediaminetetraacetic acid
Juxtacanalicular tissue
Trabecular meshwork
Aqueous humor dynamics
Tumor necrosis factor
Schlemm's canal
Dimethyl sulfoxide
Institutional review board
Human immunodeficiency virus
Intraocular pressure
Language English
License Copyright © 2018. Published by Elsevier Ltd.
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Snippet Cultured trabecular meshwork (TM) cells are a valuable model system to study the cellular mechanisms involved in the regulation of conventional outflow...
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SubjectTerms Age Factors
Animals
Aqueous humor dynamics
Biomarkers - metabolism
Cell Culture Techniques
Cell Separation - methods
Consensus
Conventional outflow
Fetus
Glaucoma
Guidelines as Topic
Humans
Intraocular pressure
Ocular hypertension
Tissue and Organ Harvesting
Tissue Donors
Tissue Preservation
Trabecular Meshwork - cytology
Trabecular Meshwork - metabolism
Title Consensus recommendations for trabecular meshwork cell isolation, characterization and culture
URI https://dx.doi.org/10.1016/j.exer.2018.03.001
https://www.ncbi.nlm.nih.gov/pubmed/29526795
https://www.proquest.com/docview/2013103449
https://pubmed.ncbi.nlm.nih.gov/PMC6042513
Volume 171
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